Goossens Pieter-Jan, Vallaey Brecht, Verlinden Jesse, Martens Johan A, Rongé Jan
Centre for Surface Chemistry and Catalysis, KU Leuven, Celestijnenlaan 200F Box 2461, B-3001, Leuven, Belgium.
Antwerp Polymers Plant, ExxonMobil, Canadastraat 20, 2070, Zwijndrecht, Belgium.
Chemphyschem. 2018 Feb 19;19(4):538-546. doi: 10.1002/cphc.201700745. Epub 2017 Sep 22.
Nafion proton exchange membranes dehydrate when they are used in the gas phase and in high-temperature applications, such as fuel cells and (photo)electrolysis. Retaining a high level of membrane hydration under such conditions can be achieved by using inorganic fillers, but has never been demonstrated for thin films. Herein, several types of siliceous nanoparticles were incorporated for the first time into Nafion thin films. For composite Nafion materials, increased water uptake does not always induce increased proton conductivity. Here, increased water uptake did result in higher proton conductivity due to a synergistic effect within the composite film. The nanocomposites displayed a higher water uptake than could be expected based on the water uptake of the individual materials. Excess water present at the Nafion-filler interface was found to cause the proton conductivity of nanocomposite Nafion/Ludox AS-40 thin films to double compared with pristine Nafion at low relative humidity (from 2 to 4 mS cm ). Knowledge about the properties of such interfaces will allow for the better design of self-humidifying nanocomposite Nafion membranes, films, and catalyst layers.
当用于气相和高温应用(如燃料电池和(光)电解)时,Nafion质子交换膜会脱水。在这种条件下,通过使用无机填料可以实现保持高水平的膜水合作用,但对于薄膜而言尚未得到证实。在此,首次将几种类型的硅质纳米颗粒掺入Nafion薄膜中。对于复合Nafion材料,吸水量增加并不总是会导致质子传导率增加。在此,由于复合膜内的协同效应,吸水量增加确实导致了更高的质子传导率。纳米复合材料的吸水量高于基于各单独材料的吸水量所预期的值。发现在低相对湿度下(从2至4 mS cm),Nafion-填料界面处存在的过量水分会使纳米复合Nafion/Ludox AS-40薄膜的质子传导率相比原始Nafion提高一倍。了解此类界面的性质将有助于更好地设计自增湿纳米复合Nafion膜、薄膜和催化剂层。